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@ -6,6 +6,7 @@ |
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#include <array>
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#include <bitset>
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#include <cstdlib>
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#include <string>
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#include "common/file_util.h"
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#include "core/core.h"
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@ -13,7 +14,7 @@ |
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// Numbers are chosen randomly to make sure the correct one is given.
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static constexpr std::array<u64, 5> CB_IDS{{42, 144, 93, 1026, UINT64_C(0xFFFF7FFFF7FFFF)}}; |
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static constexpr int MAX_SLICE_LENGTH = 20000; // Copied from CoreTiming internals
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static constexpr int MAX_SLICE_LENGTH = 10000; // Copied from CoreTiming internals
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static std::bitset<CB_IDS.size()> callbacks_ran_flags; |
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static u64 expected_callback = 0; |
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@ -28,6 +29,12 @@ void CallbackTemplate(u64 userdata, s64 cycles_late) { |
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REQUIRE(lateness == cycles_late); |
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} |
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static u64 callbacks_done = 0; |
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void EmptyCallback(u64 userdata, s64 cycles_late) { |
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++callbacks_done; |
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} |
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struct ScopeInit final { |
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ScopeInit() { |
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core_timing.Initialize(); |
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@ -39,18 +46,19 @@ struct ScopeInit final { |
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Core::Timing::CoreTiming core_timing; |
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}; |
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static void AdvanceAndCheck(Core::Timing::CoreTiming& core_timing, u32 idx, int downcount, |
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static void AdvanceAndCheck(Core::Timing::CoreTiming& core_timing, u32 idx, u32 context = 0, |
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int expected_lateness = 0, int cpu_downcount = 0) { |
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callbacks_ran_flags = 0; |
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expected_callback = CB_IDS[idx]; |
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lateness = expected_lateness; |
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// Pretend we executed X cycles of instructions.
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core_timing.SwitchContext(context); |
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core_timing.AddTicks(core_timing.GetDowncount() - cpu_downcount); |
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core_timing.Advance(); |
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core_timing.SwitchContext((context + 1) % 4); |
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REQUIRE(decltype(callbacks_ran_flags)().set(idx) == callbacks_ran_flags); |
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REQUIRE(downcount == core_timing.GetDowncount()); |
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} |
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TEST_CASE("CoreTiming[BasicOrder]", "[core]") { |
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@ -64,112 +72,61 @@ TEST_CASE("CoreTiming[BasicOrder]", "[core]") { |
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Core::Timing::EventType* cb_e = core_timing.RegisterEvent("callbackE", CallbackTemplate<4>); |
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// Enter slice 0
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core_timing.Advance(); |
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// D -> B -> C -> A -> E
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core_timing.ScheduleEvent(1000, cb_a, CB_IDS[0]); |
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REQUIRE(1000 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(500, cb_b, CB_IDS[1]); |
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REQUIRE(500 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(800, cb_c, CB_IDS[2]); |
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REQUIRE(500 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(100, cb_d, CB_IDS[3]); |
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REQUIRE(100 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(1200, cb_e, CB_IDS[4]); |
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REQUIRE(100 == core_timing.GetDowncount()); |
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AdvanceAndCheck(core_timing, 3, 400); |
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AdvanceAndCheck(core_timing, 1, 300); |
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AdvanceAndCheck(core_timing, 2, 200); |
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AdvanceAndCheck(core_timing, 0, 200); |
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AdvanceAndCheck(core_timing, 4, MAX_SLICE_LENGTH); |
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} |
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TEST_CASE("CoreTiming[Threadsave]", "[core]") { |
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ScopeInit guard; |
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auto& core_timing = guard.core_timing; |
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Core::Timing::EventType* cb_a = core_timing.RegisterEvent("callbackA", CallbackTemplate<0>); |
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Core::Timing::EventType* cb_b = core_timing.RegisterEvent("callbackB", CallbackTemplate<1>); |
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Core::Timing::EventType* cb_c = core_timing.RegisterEvent("callbackC", CallbackTemplate<2>); |
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Core::Timing::EventType* cb_d = core_timing.RegisterEvent("callbackD", CallbackTemplate<3>); |
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Core::Timing::EventType* cb_e = core_timing.RegisterEvent("callbackE", CallbackTemplate<4>); |
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// Enter slice 0
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core_timing.Advance(); |
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core_timing.ResetRun(); |
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// D -> B -> C -> A -> E
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core_timing.SwitchContext(0); |
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core_timing.ScheduleEvent(1000, cb_a, CB_IDS[0]); |
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// Manually force since ScheduleEvent doesn't call it
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core_timing.ForceExceptionCheck(1000); |
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REQUIRE(1000 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(500, cb_b, CB_IDS[1]); |
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// Manually force since ScheduleEvent doesn't call it
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core_timing.ForceExceptionCheck(500); |
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REQUIRE(500 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(800, cb_c, CB_IDS[2]); |
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// Manually force since ScheduleEvent doesn't call it
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core_timing.ForceExceptionCheck(800); |
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REQUIRE(500 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(100, cb_d, CB_IDS[3]); |
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// Manually force since ScheduleEvent doesn't call it
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core_timing.ForceExceptionCheck(100); |
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REQUIRE(100 == core_timing.GetDowncount()); |
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core_timing.ScheduleEvent(1200, cb_e, CB_IDS[4]); |
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// Manually force since ScheduleEvent doesn't call it
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core_timing.ForceExceptionCheck(1200); |
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REQUIRE(100 == core_timing.GetDowncount()); |
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AdvanceAndCheck(core_timing, 3, 400); |
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AdvanceAndCheck(core_timing, 1, 300); |
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AdvanceAndCheck(core_timing, 2, 200); |
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AdvanceAndCheck(core_timing, 0, 200); |
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AdvanceAndCheck(core_timing, 4, MAX_SLICE_LENGTH); |
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} |
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namespace SharedSlotTest { |
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static unsigned int counter = 0; |
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template <unsigned int ID> |
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void FifoCallback(u64 userdata, s64 cycles_late) { |
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static_assert(ID < CB_IDS.size(), "ID out of range"); |
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callbacks_ran_flags.set(ID); |
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REQUIRE(CB_IDS[ID] == userdata); |
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REQUIRE(ID == counter); |
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REQUIRE(lateness == cycles_late); |
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++counter; |
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AdvanceAndCheck(core_timing, 3, 0); |
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AdvanceAndCheck(core_timing, 1, 1); |
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AdvanceAndCheck(core_timing, 2, 2); |
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AdvanceAndCheck(core_timing, 0, 3); |
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AdvanceAndCheck(core_timing, 4, 0); |
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} |
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} // namespace SharedSlotTest
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TEST_CASE("CoreTiming[SharedSlot]", "[core]") { |
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using namespace SharedSlotTest; |
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TEST_CASE("CoreTiming[FairSharing]", "[core]") { |
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ScopeInit guard; |
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auto& core_timing = guard.core_timing; |
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Core::Timing::EventType* cb_a = core_timing.RegisterEvent("callbackA", FifoCallback<0>); |
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Core::Timing::EventType* cb_b = core_timing.RegisterEvent("callbackB", FifoCallback<1>); |
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Core::Timing::EventType* cb_c = core_timing.RegisterEvent("callbackC", FifoCallback<2>); |
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Core::Timing::EventType* cb_d = core_timing.RegisterEvent("callbackD", FifoCallback<3>); |
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Core::Timing::EventType* cb_e = core_timing.RegisterEvent("callbackE", FifoCallback<4>); |
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Core::Timing::EventType* empty_callback = |
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core_timing.RegisterEvent("empty_callback", EmptyCallback); |
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core_timing.ScheduleEvent(1000, cb_a, CB_IDS[0]); |
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core_timing.ScheduleEvent(1000, cb_b, CB_IDS[1]); |
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core_timing.ScheduleEvent(1000, cb_c, CB_IDS[2]); |
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core_timing.ScheduleEvent(1000, cb_d, CB_IDS[3]); |
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core_timing.ScheduleEvent(1000, cb_e, CB_IDS[4]); |
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// Enter slice 0
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core_timing.Advance(); |
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REQUIRE(1000 == core_timing.GetDowncount()); |
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callbacks_done = 0; |
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u64 MAX_CALLBACKS = 10; |
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for (std::size_t i = 0; i < 10; i++) { |
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core_timing.ScheduleEvent(i * 3333U, empty_callback, 0); |
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} |
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callbacks_ran_flags = 0; |
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counter = 0; |
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lateness = 0; |
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core_timing.AddTicks(core_timing.GetDowncount()); |
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core_timing.Advance(); |
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REQUIRE(MAX_SLICE_LENGTH == core_timing.GetDowncount()); |
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REQUIRE(0x1FULL == callbacks_ran_flags.to_ullong()); |
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const s64 advances = MAX_SLICE_LENGTH / 10; |
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core_timing.ResetRun(); |
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u64 current_time = core_timing.GetTicks(); |
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bool keep_running{}; |
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do { |
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keep_running = false; |
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for (u32 active_core = 0; active_core < 4; ++active_core) { |
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core_timing.SwitchContext(active_core); |
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if (core_timing.CanCurrentContextRun()) { |
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core_timing.AddTicks(std::min<s64>(advances, core_timing.GetDowncount())); |
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core_timing.Advance(); |
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} |
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keep_running |= core_timing.CanCurrentContextRun(); |
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} |
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} while (keep_running); |
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u64 current_time_2 = core_timing.GetTicks(); |
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REQUIRE(MAX_CALLBACKS == callbacks_done); |
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REQUIRE(current_time_2 == current_time + MAX_SLICE_LENGTH * 4); |
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} |
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TEST_CASE("Core::Timing[PredictableLateness]", "[core]") { |
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@ -180,13 +137,13 @@ TEST_CASE("Core::Timing[PredictableLateness]", "[core]") { |
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Core::Timing::EventType* cb_b = core_timing.RegisterEvent("callbackB", CallbackTemplate<1>); |
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// Enter slice 0
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core_timing.Advance(); |
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core_timing.ResetRun(); |
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core_timing.ScheduleEvent(100, cb_a, CB_IDS[0]); |
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core_timing.ScheduleEvent(200, cb_b, CB_IDS[1]); |
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AdvanceAndCheck(core_timing, 0, 90, 10, -10); // (100 - 10)
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AdvanceAndCheck(core_timing, 1, MAX_SLICE_LENGTH, 50, -50); |
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AdvanceAndCheck(core_timing, 0, 0, 10, -10); // (100 - 10)
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AdvanceAndCheck(core_timing, 1, 1, 50, -50); |
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} |
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namespace ChainSchedulingTest { |
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@ -220,7 +177,7 @@ TEST_CASE("CoreTiming[ChainScheduling]", "[core]") { |
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}); |
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// Enter slice 0
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core_timing.Advance(); |
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core_timing.ResetRun(); |
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core_timing.ScheduleEvent(800, cb_a, CB_IDS[0]); |
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core_timing.ScheduleEvent(1000, cb_b, CB_IDS[1]); |
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@ -229,19 +186,19 @@ TEST_CASE("CoreTiming[ChainScheduling]", "[core]") { |
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REQUIRE(800 == core_timing.GetDowncount()); |
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reschedules = 3; |
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AdvanceAndCheck(core_timing, 0, 200); // cb_a
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AdvanceAndCheck(core_timing, 1, 1000); // cb_b, cb_rs
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AdvanceAndCheck(core_timing, 0, 0); // cb_a
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AdvanceAndCheck(core_timing, 1, 1); // cb_b, cb_rs
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REQUIRE(2 == reschedules); |
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core_timing.AddTicks(core_timing.GetDowncount()); |
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core_timing.Advance(); // cb_rs
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core_timing.SwitchContext(3); |
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REQUIRE(1 == reschedules); |
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REQUIRE(200 == core_timing.GetDowncount()); |
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AdvanceAndCheck(core_timing, 2, 800); // cb_c
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AdvanceAndCheck(core_timing, 2, 3); // cb_c
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core_timing.AddTicks(core_timing.GetDowncount()); |
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core_timing.Advance(); // cb_rs
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REQUIRE(0 == reschedules); |
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REQUIRE(MAX_SLICE_LENGTH == core_timing.GetDowncount()); |
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} |